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EP 1 244 586 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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15.02.2006 Bulletin 2006/07 |
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Date of filing: 21.12.2000 |
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International Patent Classification (IPC):
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International application number: |
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PCT/SE2000/002620 |
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International publication number: |
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WO 2001/047765 (05.07.2001 Gazette 2001/27) |
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GENERATOR
GENERATOR
GENERATEUR
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Designated Contracting States: |
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AT BE CH CY DE DK ES FI FR GB GR IE IT LI LU MC NL PT SE TR |
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Priority: |
28.12.1999 SE 9904807
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Date of publication of application: |
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02.10.2002 Bulletin 2002/40 |
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Proprietor: Sjöberg, Tarmo |
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512 76 Hillared (SE) |
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Inventor: |
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- Sjöberg, Tarmo
512 76 Hillared (SE)
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Representative: Lundquist, Arne |
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Oxoen 1:9 139 50 Vaermdoe 139 50 Vaermdoe (SE) |
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References cited: :
EP-A1- 0 425 260 US-A- 5 731 645
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DE-A1- 3 236 211
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] The present invention relates to a generator, built in a wheel nave, as defined in
the preamble of claim 1. Such a generator is shown in EP-A-0 425 260.
There are generators for a variety of purposes. There are for instance small local
wind power plants, for separate households or a small group of households, another
application is for bicycles. Present generators for such seldom operate satisfactorily,
as they are mounted for contact with a tyre when light shall be switched on. Often,
especially with rain or snow, the friction between the tyre and the driving wheel
of the generator is inadequate such that the generator does not operate in the intended
way. When a conventional generator for a bicycle operates it exerts a considerable
brake action at the wheel, which may be annoying.
The object of the present invention is to provide a generator of the art mentioned
introductorily, that does not show the drawbacks, that are typical for generators,
hitherto present, that is to say with a great braking action in relationship to effect
gained, or else inferior function.
According to the invention, such a generator is characterised primarily in the fact,
that
magnets are provided, concentric with the coil, turning a first group with alternating
N- and S- magnet poles to a first plane, and a second group with alternating N- and
S- magnet poles turning to an opposite second plane, whereas a first and a second
pole changer are provided to rotate in relationship to the wheel axis, whereas during
the rotation one of the pole changers passes relatively close to the first group of
magnet poles and the second pole changer passes relatively close to the second group
of magnet poles. Further characteristics and features for the generator according
to the invention are disclosed in the enclosed dependent claims.
[0002] The invention will be described in the following, reference being made to a generator
for a bicycle as an example, reference being made to the enclosed schematic figures.
Thus there is shown in
figure 1 a generator for a bicycle according to the invention in an axial section,
figure 2 a view toward a section perpendicular to figure 1, whilst
figure 3 shows an alternative embodiment of a pole changer in an axial section.
The bicycle generator forms part of the wheel nave at an axis 1. The generator is
protected by and is enclosed in a casing 2, that is ended by an end plate 3, which
is carried by the axis by a ball- bearing 4, engaging a flange 5 at the axis 1. The
encapsulation is part of the wheel nave and the casing 2 has an outer flange 19 with
holes for the wheel spokes in a conventional wheel design. The other end of the casing
is carried via the wheel nave of a corresponding bearing at the axis.
[0003] The generator also comprises a portion 17, fixed to the axis, forming a magnet casing.
In this there are provided a number of magnets 15, 21,22, placed in a circle within
the casing 17, and within these a coil 14. The fixed portion also comprises a gear
ring 10 with inner cogs, cooperating with a gear wheel 9 to transfer a quick rotating
movement to pole changers 12,13, provided at the sides of the magnets and the coil.
[0004] An axis 6 is fixed at the end plate 3 of the nave, direct inwards to the generator.
The gear wheel 9 is arranged to rotate freely on the axis 6 on a ball - bearing 8
at the flange 7 of the axis. The gear wheel 9 is engaging the gear ring 10 and also
a gear ring 11 that is fixed, via a bearing ring 18, to pole changers 12,13. The bearing
ring is arranged to rotate by a ball - bearing on the wheel axis 1.
[0005] A number of magnets 15,21,22 are directed parallel to the axis 1, the magnets being
provided outside of the coil 14 concentric with and evenly distributed in a ring around
the complete circumference of the coil, such that the magnet poles, turned outwards
to the pole changers are alternating North- respectively South-poles with the same
partition between different arts of poles around the complete ring. The pole changers
12,13 are plane discs and have each of them a number of protruding flanges 26, extending
from a central disc of the pole changer in the same plane as the disc outwards to
and somewhat above the middle of the magnet poles. Preferably the number of flanges
is the same as the number of magnet pole groups of one art of pole and the width b
of each flange corresponds approximately to the partition measure d between the magnet
poles. The magnet poles are coupled together, magnetically conductive, by the bearing
ring 18.
[0006] The function of the device may be described as follows. When the wheel rotates around
the axis 1 the nave is turned and therewith the casing 2 and the end plate 3 around
the axis 1 with the same number of revolutions as that of the wheel, whilst the magnet
casing 17, at the inside of the casing 2, is fixed to the axis 1 and remains still
in relationship to same. The axis 6 of the gear wheel 9 will then be transferred in
relationship to the magnet casing 17 and the gear ring 10, which is part of same,
which means, that the gear wheel 9 rotates on the axis 6. The gear wheel 9 will then
act upon the gear ring 11 such that this will rotate on the axis 1 and via the bearing
ring 18 this rotation will be transferred to the pole changers 12,13, which will then
rotate in relationship to the magnets 15,21,22, which stand still in relationship
to the axis 1. The gear ratio between the gear ring 10 and the gear wheel 9 and that
between the gear wheel 9 and the gear ring 11 will make the pole changers rotate at
a much higher speed of rotation than that of the wheel and the wheel nave. Variations
in the magnet field, that occur in relationship to the coil 14 will mean, that an
electric current is created in the coil and is conducted via the electrical lines
23 and 25 to an electrical circuit, that usually is formed from components, being
part of the of the bicycle lightning. In this case, the magnet casing and the wheel
axis are used as one conductor, whilst the other conductor 23 is led out through a
channel 24 in the axis.
[0007] The design disclosed above is such, that the generator only demands a small space,
and it is for instance possible to combine it with a brake drum in the same nave.
Within the scope of the invention as defined in the appended claims, the design of
the generator may be varied in different ways. This is, for example, true for the
number of magnets and the location of these inwards our outwards of the coil, with
different partitions. The design of the pole changers may also be varied in several
ways. In figure 3 it is shown, that the pole changers 26 and 26 are formed as truncated
cones with a small axial extension, with recesses, such that flanges are formed.
1. Generator, built in a wheel nave, whereas this and a casing (2), enclosing the generator,
rotate around a fixed wheel axis (1), whereas the generator comprises a coil (14),
concentric with the wheel axis and fixed to wheel axis (1),
characterised in that
magnets are provided, concentric with the coil (14) turning a first group with alternating
N- and S- magnet poles (21,22) to a first plane, and a second group with alternating
N- and S- magnet poles to an opposite second plane, wherein a first and a second pole
changer (12,13) are provided to rotate in relationship to the wheel axis (1), and
wherein during the rotation one of the pole changers (12) passes relatively close
to the first group of magnet poles and the other pole changer (13) passes relatively
close to the second group of magnet poles.
2. Generator according to claim 1,
characterised in that
the pole changers (12,13) consist of plane discs with flanges (26), protruding in
the same plane.
3. Generator according to claim 1,
characterised in that
the pole changers (27,28) consist of truncated cones with small axial extension, with
recesses, such that flanges are formed.
4. Generator according to claim 2 or 3,
characterised in that
the number of flanges (26) at a pole changer (12,13) is the same as the number of
like magnet poles directed to the pole changer.
5. Generator according to any of claims 1 to 4,
characterised in that
the pole changers are arranged to rotate at a higher rotation a 1 speed than the wheel
nave.
6. Generator according to claim 2 or 3,
characterised in that
the pole changers are driven by a driving device, comprising a gear ring, provided
at the inside of a casing (17) fixed to the wheel axis (1), further a gear wheel (9)
engaging the gear ring, freely rotating around an axis (6) firmly mounted at said
casing (2) or at and end plate (3), comprised in same, and a gear (11) directly or
indirectly firmly connected to the pole changers and that is also engaging the gear
wheel (9).
1. Generator, eingebaut in einen Radkörper, der, ebenso wie ein Gehäuse (2), das den
Generator umschtießt, um eine feste Radachse (1) drehbar ist, wobei der Generator
eine Spule (14) aufweist, die konzentrisch zu der Radachse liegt und an der Radachse
(1) befestigt ist,
dadurch gekennzeichnet, dass Magnete konzentrisch zu der Spule (14) vorgesehen sind, die eine erste Gruppe mit
abwechselnden Nord- und Süd-Magnetpolen (21, 22) zu einer ersten Ebene und eine zweite
Gruppe mit abwechselnden Nord- und Süd-Magnetpolen zu einer gegenüberliegenden zweiten
Ebene dreht, wobei ein erster und ein zweiter Polwender (12, 13) vorgesehen ist, die
in Relation zu der Radachse (1) drehbar sind, und wobei während der Drehung einer
der Polwender (12) relativ nahe an der ersten Gruppe von Magnetpolen und der andere
Polwender (13) relativ nahe an der zweiten Gruppe von Magnetpolen vorbeiläuft.
2. Generator nach Anspruch 1,
dadurch gekennzeichnet, dass die Polwender (12, 13) aus ebenen Scheiben mit Flanschen (26) bestehen, die in der
gleichen Ebene hervortreten.
3. Generator nach Anspruch 1,
dadurch gekennzeichnet, dass die Polwender (27, 28) aus Kegelstümpfen mit geringer axialer Ausdehnung mit Ausnchmungen
bestehen, so dass Flansche gebildet werden.
4. Generator nach Anspruch 2 oder 3,
dadurch gekennzeichnet, dass die Anzahl der Flansche (26) an einem Polwender (12,13) die gleiche ist, wie die
Anzahl von gleichen Magnetpolen, die auf den Polwender gerichtet sind.
5. Generator nach einem der Ansprüche 1 bis 4,
dadurch gekennzeichnet, dass die Polwender so angeordnet sind, dass sie mit einer höheren Drchgeschwindigkeit
rotieren, als der Radkörper.
6. Generator nach Anspruch 2 oder 3,
dadurch gekennzeichnet, dass die Polwender mit einer Antriebseinrichtung antreibbar sind, die einen Getriehering
(10), der an der Innenseite eines Gehäuses (17) angeordnet und an der Radachse (I)
befestigt ist, ferner ein Getrieberad (9), das mit dem Getriebering (10) eingreift
und frei um eine Achse (6) rotiert, die fest an dem Gehäuse (2) oder an einer Endplatte
(3), die in diesem enthalten ist, montiert ist, sowie einen Getriebering (11) aufweist,
der direkt oder indirekt fest mit den Polwendem verbunden ist und der ebenfalls mit
dem Getrieberad (9) eingreift.
1. Générateur, construit dans un moyeu de roue, alors que celui-ci et un carter (2),
enfermant le générateur, tournent autour d'un axe de roue fixé (1), alors que le générateur
comporte une bobine (14), concentrique à l'axe de roue et fixée sur l'axe de roue
(1),
caractérisé en ce que
des aimants sont agencés, concentriquement à la bobine (14) qui tourne, un premier
groupe ayant des pôles magnétiques N et S alternants (21, 22) dans un premier plan,
et un second groupe ayant des pôles magnétiques N et S alternants dans un second plan
opposé, dans lequel un premier et un second changeur de pôle (12, 13) sont agencés
pour tourner par rapport à l'axe de roue (1), et dans lequel pendant la rotation un
des changeurs de pôle (12) passe relativement près du premier groupe de pôles magnétiques
et l'autre changeur de pôle (13) passe relativement près du second groupe de pôles
magnétiques.
2. Générateur selon la revendication 1,
caractérisé en ce que
les changeurs de pôle (12, 13) sont constitués de disques plats ayant des flancs (26)
en saillie dans le même plan.
3. Générateur selon la revendication 1,
caractérisé en ce que
les changeurs de pôle (27, 28) sont constitués de cônes tronqués ayant une petite
étendue axiale, ayant des évidements, de telle sorte que les flancs sont formés.
4. Générateur selon la revendication 2 ou 3,
caractérisé en ce que
le nombre de flancs (26) au niveau d'un changeur de pôle (12, 13) est le même que
le nombre de pôles magnétiques analogues dirigés vers le changeur de pôle.
5. Générateur selon l'une quelconque des revendications 1 à 4,
caractérisé en ce que
les changeurs de pôle sont agencés pour tourner à une vitesse de rotation plus élevée
que le moyeu de roue.
6. Générateur selon la revendication 2 ou 3,
caractérisé en ce que
les changeurs de pôle sont entraînés par un dispositif d'entraînement, comportant
une couronne dentée, agencée à l'intérieur d'un carter (17) fixé sur l'axe de roue
(1), en outre un pignon (9) venant en prise avec la couronne dentée, tournant librement
autour d'un axe (6) monté de manière ferme au niveau dudit carter (2) ou au niveau
d'une plaque d'extrémité (3), constituée dans celui-ci, et un engrenage (11) relié
fermement directement ou indirectement aux changeurs de pôle et qui est également
en prise avec le pignon (9).